AbstractThe chief and largely terminal element of normal blood clotting is considered to involve the polymerisation of the mainly α-helical fibrinogen to fibrin, with a binding mechanism involving ‘knobs and holes’ but with otherwise little change in protein secondary structure. We recognise, however, that extremely unusual mutations or mechanical stressing can cause fibrinogen to adopt a conformation containing extensive β-sheets. Similarly, prions can change morphology from a largely α-helical to largely β-sheet conformation, and the latter catalyses both the transition and the self-organising polymerisation of the β-sheet structures. Many other proteins can also do this, where it is known as amyloidogenesis. When fibrin is formed in samp...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...
The misfolding of specific proteins is often associated with their assembly into fibrillar aggregate...
CITATION: Pretorius, E., et al. 2018. Lipopolysaccharide-binding protein (LBP) can reverse the amylo...
AbstractThe chief and largely terminal element of normal blood clotting is considered to involve the...
AbstractAmyloid-β, the protein implicated in Alzheimer’s disease, along with a number of other prote...
All amyloid comprises fibrillar polymers of tightly associated protein monomers. Central to the fibr...
Aggregation of misfolded proteins into fibrillar, β-sheet-rich structures, termed amyloid, causes d...
AbstractThe assembly and misassembly of normally soluble proteins into fibrilar structures is though...
The inability of a protein to adopt its native and soluble conformation (protein misfolding) is the ...
Amyloid fibril formation involves three steps; structural perturbation, nucleation and elongation. W...
CITATION: Page, M. J., et al. 2019. Serum amyloid A binds to fibrin(ogen), promoting fibrin amyloid ...
AbstractImmunoglobulin light chain (LC) normally is a soluble, secreted protein, but some LC assembl...
The aggregation of proteins into amyloid fibrils and their deposition into plaques and intracellular...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
The amyloidoses constitute a large group of diseases caused by an alteration in the conformation and...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...
The misfolding of specific proteins is often associated with their assembly into fibrillar aggregate...
CITATION: Pretorius, E., et al. 2018. Lipopolysaccharide-binding protein (LBP) can reverse the amylo...
AbstractThe chief and largely terminal element of normal blood clotting is considered to involve the...
AbstractAmyloid-β, the protein implicated in Alzheimer’s disease, along with a number of other prote...
All amyloid comprises fibrillar polymers of tightly associated protein monomers. Central to the fibr...
Aggregation of misfolded proteins into fibrillar, β-sheet-rich structures, termed amyloid, causes d...
AbstractThe assembly and misassembly of normally soluble proteins into fibrilar structures is though...
The inability of a protein to adopt its native and soluble conformation (protein misfolding) is the ...
Amyloid fibril formation involves three steps; structural perturbation, nucleation and elongation. W...
CITATION: Page, M. J., et al. 2019. Serum amyloid A binds to fibrin(ogen), promoting fibrin amyloid ...
AbstractImmunoglobulin light chain (LC) normally is a soluble, secreted protein, but some LC assembl...
The aggregation of proteins into amyloid fibrils and their deposition into plaques and intracellular...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
The amyloidoses constitute a large group of diseases caused by an alteration in the conformation and...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...
The misfolding of specific proteins is often associated with their assembly into fibrillar aggregate...
CITATION: Pretorius, E., et al. 2018. Lipopolysaccharide-binding protein (LBP) can reverse the amylo...